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baylor |
1.1 |
# ==================== |
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# | Model parameters | |
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# ==================== |
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# |
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# Continuous equation parameters |
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&PARM01 |
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baylor |
1.3 |
viscAr=5.E-5, |
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# This is the background viscosity used total=viscah+viscleith |
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# viscAh=1.E2, |
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# viscA4=1.E2, |
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# This is the background viscosity used on vorticity points |
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# viscAhZ=1.E2, |
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# viscA4Z=1.E2, |
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# This is the background viscosity used on divergence points |
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# viscAhD=1.E2, |
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# viscA4D=1.E2, |
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# viscAhd and viscahz are set to viscah if they are unset initially |
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# This is a maximum gridscale Reynolds number limiter |
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# ViscAhRemax=10, |
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# ViscA4Remax=10, |
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# This is a minimum autoscaling viscosity |
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# ViscAhGridMin=.01, |
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# ViscA4GridMin=.01, |
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baylor |
1.1 |
# This is the standard Leith Viscosity, prop to grad(curl v_h) |
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baylor |
1.4 |
viscC2leith=1.85, |
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# viscC4leith=1.85, |
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baylor |
1.1 |
# This is an additional Leith Viscosity, prop to grad(div.v_h) |
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# It traps instabilities that have no signal in grad(curl v_h) |
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baylor |
1.4 |
viscC2leithD=1.85, |
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# viscC4leithD=1.85, |
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baylor |
1.1 |
# This is harmonic Smagorinsky Coefficient |
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baylor |
1.3 |
# 0.2-0.9=value from 3-d turbulence theory; Smagorinsky (1993) |
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# 2.2-4=stable oceanic values (Griffies and Hallberg, 2000) |
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baylor |
1.4 |
# 1.0 smag is approximately the same as 1.85 leith+leithd |
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# for this grid |
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viscC2Smag=1.0, |
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baylor |
1.3 |
# viscC4Smag=1.0, |
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baylor |
1.1 |
# This is the max Viscosity used, be it Smag or Leith, and it scales |
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# with grid size and timestep |
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baylor |
1.3 |
viscAhGridMax=1.0, |
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# viscA4GridMax=1.0, |
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# This uses the full grad(vort) and grad(div) |
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useFullLeith=.FALSE., |
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# This uses the Strain-Tension form for calculating viscous terms |
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useStrainTensionVisc=.FALSE., |
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baylor |
1.1 |
no_slip_sides=.FALSE., |
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no_slip_bottom=.FALSE., |
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ivdc_kappa=10., |
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implicitDiffusion=.TRUE., |
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implicitViscosity=.TRUE., |
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f0=7.29e-5, |
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beta=0.E-11, |
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eosType='LINEAR', |
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# Using Temperature as only Active Tracer |
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tAlpha=2.E-4, |
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# Using Salinity as Spice |
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sBeta =0.E-4, |
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saltStepping=.TRUE., |
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gravity=9.81, |
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rhonil=1035., |
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implicitFreeSurface=.TRUE., |
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usejamartwetpoints=.TRUE., |
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rigidLid=.FALSE., |
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staggerTimeStep=.TRUE., |
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readBinaryPrec=64, |
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writeBinaryPrec=64, |
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tempAdvScheme=33, |
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saltAdvScheme=33, |
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nonHydrostatic=.FALSE., |
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vectorInvariantMomentum=.TRUE., |
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jmc |
1.7 |
& |
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baylor |
1.1 |
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# Elliptic solver parameters |
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&PARM02 |
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cg2dMaxIters=1000, |
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cg2dTargetResidual=1.E-11, |
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cg3dMaxIters=40, |
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cg3dTargetResidual=1.E-9, |
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jmc |
1.7 |
& |
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baylor |
1.1 |
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# Time stepping parameters |
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&PARM03 |
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jmc |
1.7 |
nIter0=0, |
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baylor |
1.3 |
#endTime=86400., |
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#- for testing, only run for 12 iterations: |
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nTimeSteps=12, |
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baylor |
1.1 |
deltaT=1200., |
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abEps=0.01, |
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baylor |
1.3 |
#- for testing, reduce amount of output by commenting out output frequencies: |
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# pchkptFreq=7200., |
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# taveFreq=7200., |
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# dumpFreq=7200., |
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# diagFreq=7200., |
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baylor |
1.1 |
monitorFreq=1200., |
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cadjfreq=0., |
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jmc |
1.7 |
& |
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baylor |
1.1 |
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# Gridding parameters |
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&PARM04 |
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usingCartesianGrid=.TRUE., |
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jmc |
1.7 |
delR= 40*5.0, |
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dxSpacing=1.E3, |
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dySpacing=1.E3, |
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& |
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baylor |
1.1 |
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# Input datasets |
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&PARM05 |
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bathyFile='topo_sl.bin', |
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hydrogThetaFile='thetaInitial.bin', |
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hydrogSaltFile='spiceInitial.bin', |
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jmc |
1.7 |
& |